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Journal ArticleDOI

A modification of thiocholine-ferricyanide method of Karnovsky and Roots for localization of acetylcholinesterase activity without interference by Koelle's copper thiocholine iodide precipitate.

S. Tsuji, +1 more
- 01 Jan 1983 - 
- Vol. 78, Iss: 3, pp 317-323
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TLDR
In this modified medium, Karnovsky's cupric ferrocyanide becomes the sole precipitate at the enzymatic site and this provides fine localization of acetylcholinesterase activity.
Abstract
In the original Karnovsky and Roots' method for the localization of acetylcholinesterase (AChE), thiocholine reduces the ferricyanide and cupric ions of this medium competitively, giving simultaneously cupric (Koelle's precipitate) as histochemical products. We modified the method in order to promote the true Karnovsky's reaction, and to slow down the secondary Koelle's reaction by increasing the concentration of the ferricyanide ion from 0.5 mM to 5.0 mM and by decreasing the concentration of the cupric ion from 3.0 mM to 2.5 mM. The cupric ion, complexed with 5 mM sodium citrate in the original method, was further stabilized by the use of 0.1 M citrate buffer in order to prevent the interaction of cupric ion with increased ferricyanide. In order to suppress completely the residual Koelle's precipitate, we used acetylthiocholine chloride as a substrate, instead of acetylthiocholine iodide. The chloride salt of cuprous thiocholine is soluble, contrary to the iodide salt. In addition, the pH of the medium was lowered from 6.0 to 5.0 to avoid artefactual nuclear staining, appearing at a pH beyond 5.5. In this modified medium, Karnovsky's cupric ferrocyanide becomes the sole precipitate at the enzymatic site and this provides fine localization of acetylcholinesterase activity.

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Citations
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Do metals inhibit acetylcholinesterase (AChE)? Implementation of assay conditions for the use of AChE activity as a biomarker of metal toxicity

TL;DR: The main purpose of this study was to investigate the potential of five metal ions to inhibit AChE activity in vitro and indicate that with the exception of nickel, all tested metals significantly inhibit A cholinesterase activity.
Journal ArticleDOI

History and new developments of assays for cholinesterase activity and inhibition.

TL;DR: Lab of Biomimetic Electrochemistry and Biosensors, Institute of Physical Chemistry, College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua 321004, China; State Key Laboratory of Bioelectronics.
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Development of acetylcholinesterase-positive neuronal pathways in the cochlea of the mouse.

TL;DR: Development of the cholinergic enzymes, choline acetyltransferase (ChAT) and AChE, and of the A ChE-positive innervation in the cochlea was studied biochemically and morphologically in the postnatal mouse up to 26 days.
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Ultrastructural localization of [125I]neurotensin binding sites to cholinergic neurons of the rat nucleus basalis magnocellularis.

TL;DR: Comparison of grain distribution with the frequency of occurrence of elements directly abutting the plasma membrane of neurotensin-labeled/cholinesterase-positive perikarya indicated that labeled cell surface receptors were more or less evenly distributed along the membrane as opposed to being concentrated opposite abutted axon terminals endowed or not with a visible junctional specialization.
Journal ArticleDOI

The innervation of the bovine ductus deferens: comparison of a modified acetylcholinesterase-reaction with immunoreactivities of cholinacetyltransferase and panneuronal markers

TL;DR: The positive reaction with a monoclonal antibody against cholinacetyltransferase (ChAT) specifically demonstrated for the first time the presence of a cholinergic nerve plexus, restricted to the inner muscular layer and the subepithelial space.
References
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Journal ArticleDOI

A "direct-coloring" thiocholine method for cholinesterases

TL;DR: Colour is prooduced directly at the site of eoozyusuatic activity, facilitating estinsation of h.hue ooptinuuius imscusi)soti000s tinse; the l)necipitate is finselv grssusuulan, so) lhooot, eveos witis prolonged incusbosoh booms, needle-like deposits are not ob)served; instemuse cnol(on s
Journal ArticleDOI

A histochemical method for localizing cholinesterase activity.

TL;DR: A histochemical method is presented for localizing ChE activity by incubating tissue sections in a medium containing acetylthiocholine, copper glycinate and copper thiocholine with results obtained with several tissues containing specific ChE.
Book

The biology of cholinesterases

Ann Silver
TL;DR: The biology of cholinesterases is studied in detail in two separate studies at the University of California, Davis.
Journal ArticleDOI

The localization of cholinesterase activity in rat cardiac muscle by electron microscopy

TL;DR: It is proposed that the localization of cholinesterases in myocardium at the ultrastructural level should be taken into account in considering the possible functions of these myocardial enzymes, and it is hoped that knowledge of their localization will open up new avenues of approach in considering their physiological role inMyocardium.
Journal ArticleDOI

On the chemical basis of thiocholine methods for demonstration of acetylcholinesterase activities

TL;DR: The reaction mechanism of “Koelle's thiocholine method” and "Karnovsky's ferricyanide method" for the localization of acetylcholinesterase activity have been studied and some modifications for these two methods have been proposed.
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